WO2010113054A1 - Frame concatenation in wireless uwb devices - Google Patents
Frame concatenation in wireless uwb devices Download PDFInfo
- Publication number
- WO2010113054A1 WO2010113054A1 PCT/IB2010/050982 IB2010050982W WO2010113054A1 WO 2010113054 A1 WO2010113054 A1 WO 2010113054A1 IB 2010050982 W IB2010050982 W IB 2010050982W WO 2010113054 A1 WO2010113054 A1 WO 2010113054A1
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- WO
- WIPO (PCT)
- Prior art keywords
- frame
- mini
- frames
- mac
- header
- Prior art date
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/18—Automatic repetition systems, e.g. Van Duuren systems
- H04L1/1809—Selective-repeat protocols
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/004—Arrangements for detecting or preventing errors in the information received by using forward error control
- H04L1/0056—Systems characterized by the type of code used
- H04L1/0061—Error detection codes
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/1607—Details of the supervisory signal
- H04L1/1635—Cumulative acknowledgement, i.e. the acknowledgement message applying to all previous messages
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/18—Automatic repetition systems, e.g. Van Duuren systems
- H04L1/1867—Arrangements specially adapted for the transmitter end
- H04L1/1896—ARQ related signaling
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/10—Flow control; Congestion control
- H04L47/34—Flow control; Congestion control ensuring sequence integrity, e.g. using sequence numbers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/10—Flow control between communication endpoints
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
- H04W8/04—Registration at HLR or HSS [Home Subscriber Server]
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/06—Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information
- H04W28/065—Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information using assembly or disassembly of packets
Definitions
- the invention generally relates to devices in a wireless UWB (Ultra-Wideband) network and, more particularly, to a method and system which provides a new format of concatenation frames for wireless UWB devices and a new method to concatenate frames at the MAC (medium access control) layer.
- a wireless UWB Ultra-Wideband
- MAC medium access control
- WiMedia specification for example version 1.0
- UWB Universal Mobile Broadband
- the preamble allows the receiver to acquire the wireless signal and synchronize itself with the transmitter.
- a larger frame payload size such as 16 Kilo bytes, is used, while the maximum payload size is 4 Kilo bytes in the current specification, version 1.2 of the WiMedia specification.
- Certain embodiments of the present invention disclose a new format of concatenation frames for wireless UWB devices and a new method to concatenate frames at the MAC layer.
- the disclosed format uses only up to 7 bytes for each frame in the concatenation to protect the frame, as well as to indicate a transmission sequence and other control information.
- the disclosed concatenation approach allows validating each concatenated frame individually and, accordingly, allows for the retransmission of each concatenated frame separately if errors are found in that frame, without retransmitting the data frames that are valid. In this way, the transmission efficiency and, hence, the throughput is greatly improved.
- a method for transmitting data frames from a first device to a second device in a wireless network.
- the method includes: concatenating, by a first device, a plurality of data frames into an aggregated frame; transmitting the aggregated frame from the first device to the second device; validating each of the plurality of data frames individually by the second device; and retransmitting each of the data frames that contains an error by the first device, without retransmitting the data frames that are valid.
- a system for transmitting data frames over a wireless network.
- the system includes a first device configured to concatenate a plurality of data frames into an aggregated frame, transmit the aggregated frame to the second device, and retransmit each of the data frames that contains an error, without retransmitting the data frames that are valid; and a second device configured to validate each of the plurality of data frames individually.
- Another embodiment of the invention provides a computer readable storage medium having stored thereon computer executable code that, when executed, causes a processor in a first device and a second device to perform the process of data frame transmission in a wireless communications network.
- the process includes concatenating a plurality of data frames into an aggregated frame; transmitting the aggregated frame from the first device to the second device; validating each of the plurality of data frames individually; and retransmitting each of the data frames that contains an error by the first device, without retransmitting the data frames that are valid.
- FIG. 1 illustrates a MAC frame body format for concatenated frames.
- FIG. 2 illustrates a concatenation header field format
- FIG. 3 illustrates a mini-frame field format
- FIG. 4 illustrates a mini-frame control field format
- FIG. 5 illustrates communication devices implemented with frame concatenation.
- FIG. 6 illustrates a frame concatenation flow chart
- the MAC frame header may be used for identifying the data frame as a concatenated frame.
- the frame type of the disclosed concatenated frame is defined as type 5.
- the frame type provided in the MAC frame header is encoded as in Table 1. The value of 5 is used to indicate to the recipient of the MAC frame header that the MAC frame is a concatenated data frame.
- a concatenated data frame includes a fixed-length MAC Header and a variable- length Payload.
- the MAC header fields include: protocol version, secure bit, ACK policy, frame type, frame subtype/delivery ID, retry, destination address, source address and sequence control.
- Table 2 shows an example of MAC Header field settings for concatenated frames. Table 2 - MAC Header field values for concatenated frames
- FIG. 1 illustrates the payload of a MAC frame according to an embodiment of the invention.
- the payload 100 contains a concatenation header 110 and multiple mini-frames, 111 , 112, ... , 11 N, where N is an integer.
- the number of mini-frames that can be concatenated into a MAC frame may be limited.
- the MAC frame body size for concatenated frames is subject to the same maximum size as any frame body.
- a transmitter may concatenate multiple MSDUs (MAC service data units) with an identical Delivery ID into a single MAC frame body.
- a device concatenates no more than mConcatenationLimit mini-frames into a concatenated data frame. As shown in Table 3, the number of mini-frames that can be concatenated into a MAC frame may be limited by a MAC sublayer parameter, mConcatenationLimit.
- FIG. 2 illustrates the Concatenation Header field 200.
- the Mini-Frame Count field 201 contains the number of mini-frames included in the concatenated frame.
- the Length fields, 211 , 212, ... , 21 N, in the Concatenation Header field 200 indicate the length in octets of the corresponding mini-frames.
- the FCS field 203 is the Frame Check Sequence (FCS) for all other fields in the Concatenation Header.
- the FCS field 203 contains a number that is calculated by the source node based on the data in the frame. When the destination node receives the frame, the FCS number is recalculated and compared with the FCS number included in the frame.
- each mini-frame 300 includes a Mini-Frame Control field
- a Sequence Control field 302 a Mini-Frame Payload 303, which includes a MSDU, and a FCS field 304.
- This format uses only up to 7 bytes for each frame in the concatenation to protect the frame, as well as to indicate a transmission sequence and other control information.
- the Mini-Frame Control field is illustrated in FIG. 4.
- Frame Control field 400 may be used to indicate a retry.
- the Sequence Control field 302 is set as a sequence number of the frame.
- the FCS field 304 is the Frame Check Sequence for all other fields in the mini-frame.
- the FCS field 304 contains a number that is calculated by the source node based on the data in the mini-frame.
- the FCS number is recalculated and compared with the FCS number included in the mini-frame. If the two numbers are different, an error is assumed, the mini-frame is discarded, and the mini-frame has to be retransmitted.
- both the transmitter and receiver treat each mini-frame as different entities.
- the recipient On receiving a concatenated frame, the recipient sends a control frame of type B-ACK, if the ACK Policy in the MAC header of the concatenated frame is of a type B-ACK Request.
- the recipient may indicate which mini-frames are received correctly, so that the transmitter can retransmit the mini-frames that have errors.
- the recipient does not respond with an acknowledgement frame.
- the MAC header of the concatenated frames applies equally to each mini-frame in the concatenated frame body.
- Concatenated frames may be sent as secure (S) or non-secure (N) frames, and individual data frames concatenated in the frame body have the same secure option as indicated in the MAC header. If the Secure bit in the MAC header is set to one, the Mini-Frame Payload is secured by using the secure frame format. Otherwise, the Mini- Frame Payload is the same as the MAC Frame Payload field in a normal unsecured data frame. Table 4 illustrates the security modes of the frame protection.
- FIG. 5 illustrates wireless communication devices 501 , 502 that are configured to implement the above protocols according to an embodiment of the invention.
- device A 501 When device A 501 has data frames that are intended for device B 502, device A 501 concatenates the data frames into an aggregated frame and transmits the aggregated frame to device B 502.
- Device B 502 validates each of the data frames individually.
- Device A 501 retransmits only the data frames that contain an error.
- Device B 502 may, for example, inform Device A 501 of the received data frames that contain an error via an acknowledgment frame or via any other ACK policies.
- Fig. 6 shows a process flow chart of an embodiment of the invention.
- the first device concatenates a plurality of data frames into an aggregated frame; at 602, the first device transmits the aggregated frame to the second device; at 603, the second device validates each of the plurality of data frames individually; and at 604, the first device retransmits only the data frames that contain an error.
- This invention is applicable to UWB-based WPAN and Wi Media-based Wireless Networks. It is also applicable to other wireless networks.
- the foregoing detailed description has set forth a few of the many forms that the invention can take. It is intended that the foregoing detailed description be understood as an illustration of selected forms that the invention can take and not as a limitation to the definition of the invention. It is only the claims, including all equivalents that are intended to define the scope of this invention.
- the principles of the invention are implemented as any combination of hardware, firmware and software.
- the software is preferably implemented as an application program tangibly embodied on a program storage unit or computer readable storage medium consisting of parts, or of certain devices and/or a combination of devices.
- the application program may be uploaded to, and executed by, a machine comprising any suitable architecture.
- the machine is implemented on a computer platform having hardware such as one or more central processing units ("CPUs"), a memory, and input/output interfaces.
- CPUs central processing units
- the computer platform may also include an operating system and microinstruction code.
- the various processes and functions described herein may be either part of the microinstruction code or part of the application program, or any combination thereof, which may be executed by a CPU, whether or not such computer or processor is explicitly shown.
- various other peripheral units may be connected to the computer platform such as an additional data storage unit and a printing unit.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Computer Security & Cryptography (AREA)
- Databases & Information Systems (AREA)
- Mobile Radio Communication Systems (AREA)
- Detection And Prevention Of Errors In Transmission (AREA)
Abstract
Description
Claims
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13/262,339 US8665794B2 (en) | 2009-04-01 | 2010-03-08 | Frame concatenation in wireless UWB devices |
CN201080015275.2A CN102379108B (en) | 2009-04-01 | 2010-03-08 | Frame concatenation in wireless UWB devices |
EP10712523.9A EP2415220B1 (en) | 2009-04-01 | 2010-03-08 | Frame concatenation in wireless uwb devices |
JP2012502838A JP5587974B2 (en) | 2009-04-01 | 2010-03-08 | Frame concatenation in wireless UWB devices |
Applications Claiming Priority (2)
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US16566309P | 2009-04-01 | 2009-04-01 | |
US61/165,663 | 2009-04-01 |
Publications (1)
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WO2010113054A1 true WO2010113054A1 (en) | 2010-10-07 |
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PCT/IB2010/050982 WO2010113054A1 (en) | 2009-04-01 | 2010-03-08 | Frame concatenation in wireless uwb devices |
Country Status (7)
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US (1) | US8665794B2 (en) |
EP (1) | EP2415220B1 (en) |
JP (1) | JP5587974B2 (en) |
KR (1) | KR101629856B1 (en) |
CN (1) | CN102379108B (en) |
TW (1) | TWI504203B (en) |
WO (1) | WO2010113054A1 (en) |
Families Citing this family (5)
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KR101857673B1 (en) * | 2014-04-04 | 2018-05-14 | 엘지전자 주식회사 | Method for transmitting broadcast signal, method for receiving broadcast signal, apparatus for transmitting broadcast signal, and apparatus for receiving broadcast signal |
EP3211849A4 (en) * | 2014-10-20 | 2018-04-18 | LG Electronics Inc. | Broadcasting signal transmission device, broadcasting signal reception device, broadcasting signal transmission method, and broadcasting signal reception method |
WO2018088462A1 (en) * | 2016-11-10 | 2018-05-17 | 株式会社ラック | Communication controller, communication control method, and program |
US12174287B2 (en) | 2019-01-08 | 2024-12-24 | Samsung Electronics Co., Ltd | Electronic device for performing ranging through ultra-wide band (UWB), and method for operating electronic device |
CN120074572A (en) * | 2023-11-28 | 2025-05-30 | 华为技术有限公司 | A communication method and device using HPLC technology |
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JP4528541B2 (en) * | 2004-03-05 | 2010-08-18 | 株式会社東芝 | COMMUNICATION DEVICE, COMMUNICATION METHOD, AND COMMUNICATION SYSTEM |
JP4440037B2 (en) * | 2004-08-11 | 2010-03-24 | 株式会社東芝 | Communication apparatus and communication method |
JP4645325B2 (en) * | 2005-06-30 | 2011-03-09 | ソニー株式会社 | Communication apparatus and communication system |
CN101001127B (en) * | 2006-01-10 | 2013-04-10 | 北京三星通信技术研究有限公司 | Equipment and method of correcting and coding for transmission information |
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JP2009010628A (en) * | 2007-06-27 | 2009-01-15 | Toshiba Corp | Radio communication apparatus and radio communicating method |
US8555148B2 (en) * | 2007-09-18 | 2013-10-08 | Samsung Electronics Co., Ltd. | Methods and apparatus to generate multiple CRCs |
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2010
- 2010-03-08 JP JP2012502838A patent/JP5587974B2/en active Active
- 2010-03-08 KR KR1020117025651A patent/KR101629856B1/en active Active
- 2010-03-08 WO PCT/IB2010/050982 patent/WO2010113054A1/en active Application Filing
- 2010-03-08 EP EP10712523.9A patent/EP2415220B1/en active Active
- 2010-03-08 US US13/262,339 patent/US8665794B2/en active Active
- 2010-03-08 CN CN201080015275.2A patent/CN102379108B/en active Active
- 2010-03-29 TW TW099109447A patent/TWI504203B/en active
Patent Citations (1)
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US20030214930A1 (en) * | 2002-05-17 | 2003-11-20 | Fischer Matthew James | Aggregated fragment acknowledgement in local area network |
Non-Patent Citations (2)
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"Considerations on segmentation/concatenation in LTE", 3RD GENERATION PARTNERSHIP PROJECT (3GPP); TECHNICALSPECIFICATION GROUP (TSG) RADIO ACCESS NETWORK (RAN); WORKINGGROUP 2 (WG2), XX, XX, vol. R2-060028, 9 January 2006 (2006-01-09), pages 1 - 5, XP003013946 * |
"LTE-Segmentation and concatenation proposal", 3RD GENERATION PARTNERSHIP PROJECT (3GPP); TECHNICALSPECIFICATION GROUP (TSG) RADIO ACCESS NETWORK (RAN); WORKINGGROUP 2 (WG2), XX, XX, vol. R2-060011, 9 January 2006 (2006-01-09), pages 1 - 6, XP003013944 * |
Also Published As
Publication number | Publication date |
---|---|
JP2012523154A (en) | 2012-09-27 |
EP2415220A1 (en) | 2012-02-08 |
KR20110133628A (en) | 2011-12-13 |
CN102379108B (en) | 2015-06-03 |
TW201130266A (en) | 2011-09-01 |
TWI504203B (en) | 2015-10-11 |
EP2415220B1 (en) | 2013-08-21 |
JP5587974B2 (en) | 2014-09-10 |
KR101629856B1 (en) | 2016-06-24 |
US20120039255A1 (en) | 2012-02-16 |
CN102379108A (en) | 2012-03-14 |
US8665794B2 (en) | 2014-03-04 |
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